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癌症患者和孕妇循环游离 DNA 的甲基化相关核小体模式。

Methylation-Associated Nucleosomal Patterns of Cell-Free DNA in Cancer Patients and Pregnant Women.

机构信息

Centre for Novostics, Hong Kong Science Park, Hong Kong SAR, China.

Li Ka Shing Institute of Health Sciences, The Chinese University of Hong Kong, Hong Kong SAR, China.

出版信息

Clin Chem. 2024 Nov 4;70(11):1355-1365. doi: 10.1093/clinchem/hvae118.

Abstract

BACKGROUND

Cell-free DNA (cfDNA) analysis offers an attractive noninvasive means of detecting and monitoring diseases. cfDNA cleavage patterns within a short range (e.g., 11 nucleotides) have been reported to correlate with cytosine-phosphate-guanine (CpG) methylation, allowing fragmentomics-based methylation analysis (FRAGMA). Here, we adopted FRAGMA to the extended region harboring multiple nucleosomes, termed FRAGMAXR.

METHODS

We profiled cfDNA nucleosomal patterns over the genomic regions from -800 to 800 bp surrounding differentially methylated CpG sites, harboring approximately 8 nucleosomes, referred to as CpG-associated cfDNA nucleosomal patterns. Such nucleosomal patterns were analyzed by FRAGMAXR in cancer patients and pregnant women.

RESULTS

We identified distinct cfDNA nucleosomal patterns around differentially methylated CpG sites. Compared with subjects without cancer, patients with hepatocellular carcinoma (HCC) showed reduced amplitude of nucleosomal patterns, with a gradual decrease over tumor stages. Nucleosomal patterns associated with differentially methylated CpG sites could be used to train a machine learning model, resulting in the detection of HCC patients with an area under the receiver operating characteristic curve of 0.93. We further demonstrated the feasibility of multicancer detection using a dataset comprising lung, breast, and ovarian cancers. The tissue-of-origin analysis of plasma cfDNA from pregnant women and cancer patients revealed that the placental DNA and tumoral DNA contributions deduced by FRAGMAXR correlated well with values measured using genetic variants (Pearson r: 0.85 and 0.94, respectively).

CONCLUSIONS

CpG-associated cfDNA nucleosomal patterns of cfDNA molecules are influenced by DNA methylation and might be useful for biomarker developments for cancer liquid biopsy and noninvasive prenatal testing.

摘要

背景

无细胞 DNA (cfDNA) 分析提供了一种有吸引力的非侵入性方法来检测和监测疾病。在短范围内(例如,11 个核苷酸)的 cfDNA 切割模式已被报道与胞嘧啶-磷酸-鸟嘌呤 (CpG) 甲基化相关,允许基于片段组学的甲基化分析 (FRAGMA)。在这里,我们采用 FRAGMA 分析了包含多个核小体的扩展区域,称为 FRAGMAXR。

方法

我们在围绕差异甲基化 CpG 位点的基因组区域内对 cfDNA 核小体模式进行了分析,这些区域包含大约 8 个核小体,称为 CpG 相关 cfDNA 核小体模式。通过 FRAGMAXR 在癌症患者和孕妇中分析了这些核小体模式。

结果

我们确定了差异甲基化 CpG 位点周围的独特 cfDNA 核小体模式。与没有癌症的受试者相比,肝细胞癌 (HCC) 患者的核小体模式幅度降低,并且随着肿瘤阶段的进展逐渐降低。与差异甲基化 CpG 位点相关的核小体模式可用于训练机器学习模型,从而以 0.93 的接收者操作特征曲线下面积检测 HCC 患者。我们进一步证明了使用包含肺癌、乳腺癌和卵巢癌的数据集进行多癌检测的可行性。来自孕妇和癌症患者的血浆 cfDNA 的组织起源分析表明,FRAGMAXR 推断的胎盘 DNA 和肿瘤 DNA 贡献与使用遗传变异测量的值高度相关(Pearson r:分别为 0.85 和 0.94)。

结论

cfDNA 分子的 CpG 相关 cfDNA 核小体模式受 DNA 甲基化的影响,可能有助于癌症液体活检和非侵入性产前检测的生物标志物开发。

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